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Titlebook: Computational Biomechanics for Medicine; Karol Miller,Poul M.F. Nielsen Conference proceedings 2010 Springer-Verlag New York 2010 Biomater

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41#
發(fā)表于 2025-3-28 16:59:37 | 只看該作者
Patient-Specific Hemodynamic Analysis for Proximal Protection in Carotid Angioplastyated strokes. In this chapter we analyze a proximal protection mechanism of EPD that performs cerebral protection by external and common carotid artery occlusion. The mathematical model we use is a one-dimensional (1D) equation system governing blood flow. This system is applied to a patient-specifi
42#
發(fā)表于 2025-3-28 20:21:16 | 只看該作者
Cortical Surface Motion Estimation for Brain Shift Predictionsurface is recovered by registering the preoperative surface extracted from high-resolution MRI images to the intraoperative surface acquired during surgery. The recovered motion can then be used for driving a biomechanical model in order to predict the displacement of the internal brain structures,
43#
發(fā)表于 2025-3-29 02:23:41 | 只看該作者
44#
發(fā)表于 2025-3-29 05:53:08 | 只看該作者
Can Vascular Dynamics Cause Normal Pressure Hydrocephalus?rowth. A generic 3-D mesh of a healthy human brain was created. We used a fully non-linear (geometric, constitutive and boundary conditions) 3-D model of the brain parenchyma. The brain parenchyma was modelled as a nearly incompressible, single-phase continuum. A hyperelastic constitutive law and fi
45#
發(fā)表于 2025-3-29 08:22:50 | 只看該作者
46#
發(fā)表于 2025-3-29 12:22:13 | 只看該作者
47#
發(fā)表于 2025-3-29 16:00:15 | 只看該作者
48#
發(fā)表于 2025-3-29 23:36:06 | 只看該作者
Subject-Specific Ligament Models: Toward Real-Time Simulation of the Knee Jointl elements and exploits the geometry to optimize computation of the derivatives of the strain energy. To better support incompressibility, deviatoric and dilational responses are uncoupled and a penalty term controls volume preservation. We derive stress and elasticity tensors required for implicit
49#
發(fā)表于 2025-3-30 03:24:50 | 只看該作者
50#
發(fā)表于 2025-3-30 05:19:27 | 只看該作者
Effects of Fetal Head Motion on Pelvic Floor Mechanics images, which could potentially be used to study the effect of various contributing factors (such as muscle mass and muscle tone) on the childbirth process. One important goal of this is to faithfully represent the path of the fetal head as it descends through the maternal pelvis. Previous studies
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